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基因组广泛增强子相关串联重复序列在心肌病中扩张。

Genome-wide enhancer-associated tandem repeats are expanded in cardiomyopathy.

机构信息

Genetics and Genome Biology, The Hospital for Sick Children; Toronto, Ontario, Canada.

Genetics and Genome Biology, The Hospital for Sick Children; Toronto, Ontario, Canada; Department of Molecular Genetics, University of Toronto; Toronto, Ontario, Canada.

出版信息

EBioMedicine. 2024 Mar;101:105027. doi: 10.1016/j.ebiom.2024.105027. Epub 2024 Feb 27.

Abstract

BACKGROUND

Cardiomyopathy is a clinically and genetically heterogeneous heart condition that can lead to heart failure and sudden cardiac death in childhood. While it has a strong genetic basis, the genetic aetiology for over 50% of cardiomyopathy cases remains unknown.

METHODS

In this study, we analyse the characteristics of tandem repeats from genome sequence data of unrelated individuals diagnosed with cardiomyopathy from Canada and the United Kingdom (n = 1216) and compare them to those found in the general population. We perform burden analysis to identify genomic and epigenomic features that are impacted by rare tandem repeat expansions (TREs), and enrichment analysis to identify functional pathways that are involved in the TRE-associated genes in cardiomyopathy. We use Oxford Nanopore targeted long-read sequencing to validate repeat size and methylation status of one of the most recurrent TREs. We also compare the TRE-associated genes to those that are dysregulated in the heart tissues of individuals with cardiomyopathy.

FINDINGS

We demonstrate that tandem repeats that are rarely expanded in the general population are predominantly expanded in cardiomyopathy. We find that rare TREs are disproportionately present in constrained genes near transcriptional start sites, have high GC content, and frequently overlap active enhancer H3K27ac marks, where expansion-related DNA methylation may reduce gene expression. We demonstrate the gene silencing effect of expanded CGG tandem repeats in DIP2B through promoter hypermethylation. We show that the enhancer-associated loci are found in genes that are highly expressed in human cardiomyocytes and are differentially expressed in the left ventricle of the heart in individuals with cardiomyopathy.

INTERPRETATION

Our findings highlight the underrecognized contribution of rare tandem repeat expansions to the risk of cardiomyopathy and suggest that rare TREs contribute to ∼4% of cardiomyopathy risk.

FUNDING

Government of Ontario (RKCY), The Canadian Institutes of Health Research PJT 175329 (RKCY), The Azrieli Foundation (RKCY), SickKids Catalyst Scholar in Genetics (RKCY), The University of Toronto McLaughlin Centre (RKCY, SM), Ted Rogers Centre for Heart Research (SM), Data Sciences Institute at the University of Toronto (SM), The Canadian Institutes of Health Research PJT 175034 (SM), The Canadian Institutes of Health Research ENP 161429 under the frame of ERA PerMed (SM, RL), Heart and Stroke Foundation of Ontario & Robert M Freedom Chair in Cardiovascular Science (SM), Bitove Family Professorship of Adult Congenital Heart Disease (EO), Canada Foundation for Innovation (SWS, JR), Canada Research Chair (PS), Genome Canada (PS, JR), The Canadian Institutes of Health Research (PS).

摘要

背景

心肌病是一种临床上和遗传上具有异质性的心脏疾病,可导致儿童心力衰竭和心源性猝死。虽然它具有很强的遗传基础,但仍有超过 50%的心肌病病例的遗传病因不明。

方法

在这项研究中,我们分析了来自加拿大和英国的 1216 名诊断为心肌病的无关联个体的基因组序列数据中的串联重复特征,并将其与普通人群中的特征进行比较。我们进行了负担分析,以确定受罕见串联重复扩增(TRE)影响的基因组和表观基因组特征,并进行了富集分析,以确定与心肌病中 TRE 相关基因相关的功能途径。我们使用牛津纳米孔靶向长读测序来验证一种最常见的 TRE 的重复大小和甲基化状态。我们还将 TRE 相关基因与心肌病患者心脏组织中失调的基因进行了比较。

结果

我们证明了在普通人群中很少扩增的串联重复主要在心肌病中扩增。我们发现,罕见的 TRE 大量存在于转录起始位点附近的约束基因中,具有高 GC 含量,并且经常重叠活跃的增强子 H3K27ac 标记,其中扩增相关的 DNA 甲基化可能降低基因表达。我们通过启动子超甲基化证明了扩展 CGG 串联重复对 DIP2B 的基因沉默效应。我们表明,增强子相关位点存在于在人类心肌细胞中高表达的基因中,并且在心肌病患者的心脏左心室中差异表达。

解释

我们的研究结果强调了罕见串联重复扩增对心肌病风险的认识不足,并表明罕见 TRE 对心肌病风险的贡献约为 4%。

资金

安大略省政府(RKCY)、加拿大卫生研究院 PJT 175329 项目(RKCY)、阿兹里利基金会(RKCY)、 SickKids 催化学者遗传学项目(RKCY)、多伦多大学麦克劳林中心(RKCY、SM)、特德·罗杰斯中心心脏研究项目(SM)、多伦多大学数据科学研究所(SM)、加拿大卫生研究院 PJT 175034 项目(SM)、加拿大卫生研究院 ENP 161429 项目(SM、RL),在 PERMED 框架下,埃里克森心脏研究卓越中心(SM)、心脏和中风基金会安大略省和罗伯特·M·弗里德曼心血管科学主席(SM)、比托夫成人先天性心脏病教授职位(EO)、加拿大创新基金会(SWS、JR)、加拿大研究主席(PS)、基因组加拿大(PS、JR)、加拿大卫生研究院(PS)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49f6/10944212/d0d63600c933/gr1.jpg

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